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Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics

机译:通过监测砷及其衍生物以及生物信息学和化学信息学来预防神经精神疾病的缺陷

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摘要

Neuropsychiatric disorders are induced by various risk factors, including direct exposure to environmental chemicals. Arsenic exposure induces neurodegeneration and severe psychiatric disorders, but the molecular mechanisms by which brain damage is induced are not yet elucidated. Our aim is to better understand the molecular mechanisms of arsenic toxicity in the brain and to elucidate possible ways to prevent arsenic neurotoxicity, by reviewing significant experimental, bioinformatics, and cheminformatics studies. Brain damage induced by arsenic exposure is discussed taking in account: the correlation between neuropsychiatric disorders and the presence of arsenic and its derivatives in the brain; possible molecular mechanisms by which arsenic induces disturbances of cognitive and behavioral human functions; and arsenic influence during psychiatric treatments. Additionally, we present bioinformatics and cheminformatics tools used for studying brain toxicity of arsenic and its derivatives, new nanoparticles used as arsenic delivery systems into the human body, and experimental ways to prevent arsenic contamination by its removal from water. The main aim of the present paper is to correlate bioinformatics, cheminformatics, and experimental information on the molecular mechanism of cerebral damage induced by exposure to arsenic, and to elucidate more efficient methods used to reduce its toxicity in real groundwater.
机译:神经精神疾病是由多种危险因素引起的,包括直接暴露于环境化学物质中。砷暴露会引起神经退行性变和严重的精神疾病,但尚不清楚引起脑损伤的分子机制。我们的目的是通过回顾重要的实验,生物信息学和化学信息学研究,更好地了解脑中砷毒性的分子机制,并阐明预防砷神经毒性的可能方法。讨论了砷暴露引起的脑损伤,并考虑到:神经精神疾病与大脑中砷及其衍生物的存在之间的相关性;砷可能导致人的认知和行为功能紊乱的分子机制;和精神治疗中的砷影响。此外,我们还提供了用于研究砷及其衍生物的脑毒性的生物信息学和化学信息学工具,用作将砷释放到人体中的新型纳米粒子以及通过从水中去除砷来防止砷污染的实验方法。本文的主要目的是关联生物信息学,化学信息学和实验信息,以了解砷暴露引起的脑损伤的分子机制,并阐明降低实际地下水中毒性的更有效方法。

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